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Updated: May 29, 2026

Identifying Dysregulated Genes Induced by Kaposi's Sarcoma-associated Herpesvirus (KSHV)
Published on: September 14, 2010
Control of Kaposi's sarcoma-associated herpesvirus reactivation induced by multiple signals
Fuqu Yu1, Ibrahim Al-Shyoukh, Jiaying Feng
1Department of Molecular and Medical Pharmacology, University of California Los Angeles, Los Angeles, California, United States of America.
Abstract:
The ability to control cellular functions can bring about many developments in basic biological research and its applications. The presence of multiple signals, internal as well as externally imposed, introduces several challenges for controlling cellular functions. Additionally the lack of clear understanding of the cellular signaling network limits our ability to infer the responses to a number of signals. This work investigates the control of Kaposi's sarcoma-associated herpesvirus reactivation upon treatment with a combination of multiple signals. We utilize mathematical model-based as well as experiment-based approaches to achieve the desired goals of maximizing virus reactivation. The results show that appropriately selected control signals can induce virus lytic gene expression about ten folds higher than a single drug; these results were validated by comparing the results of the two approaches, and experimentally using multiple assays. Additionally, we have quantitatively analyzed potential interactions between the used combinations of drugs. Some of these interactions were consistent with existing literature, and new interactions emerged and warrant further studies. The work presents a general method that can be used to quantitatively and systematically study multi-signal induced responses. It enables optimization of combinations to achieve desired responses. It also allows identifying critical nodes mediating the multi-signal induced responses. The concept and the approach used in this work will be directly applicable to other diseases such as AIDS and cancer.
Insights
Optimizing multiple signals for Kaposi's sarcoma-associated herpesvirus (KSHV) reactivation significantly boosts lytic gene expression. This study presents a general method for controlling cellular responses to complex signaling networks.
Area of Science:
- * Virology and molecular biology
- * Systems biology and mathematical modeling
- * Cellular signaling and drug discovery
Background:
- * Controlling cellular functions is crucial for biological research and applications.
- * Cellular signaling networks are complex, making prediction and control challenging.
- * Kaposi's sarcoma-associated herpesvirus (KSHV) reactivation is a key area of study.
Purpose of the Study:
- * To investigate the control of KSHV reactivation using combinations of multiple signals.
- * To maximize KSHV reactivation through optimized signal combinations.
- * To develop a generalizable method for studying multi-signal induced cellular responses.
Main Methods:
- * Utilization of mathematical model-based approaches.
- * Implementation of experiment-based validation using multiple assays.
- * Quantitative analysis of drug interactions within combinations.
Main Results:
- * Optimized control signals achieved approximately tenfold higher KSHV lytic gene expression compared to single drugs.
- * Validation of results through comparison of model-based and experimental approaches.
- * Identification of known and novel drug interactions, suggesting further research avenues.
Conclusions:
- * A generalizable quantitative method for studying multi-signal responses has been established.
- * The method allows for optimization of signal combinations to achieve desired cellular responses.
- * Findings are applicable to KSHV reactivation and potentially other diseases like AIDS and cancer.
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